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Rice auxin influx carrier OsAUX1 facilitates root hair elongation in response to low external phosphate

Authors :
Giri, Jitender
Bhosale, Rahul
Huang, Guoqiang
Pandey, Bipin K.
Parker, Helen
Zappala, Susan
Yang, Jing
Dievart, Anne
Bureau, Charlotte
Ljung, Karin
Price, Adam
Rose, Terry
Larrieu, Antoine
Mairhofer, Stefan
Sturrock, Craig J.
White, Philip
Dupuy, Lionel
Hawkesford, Malcolm
Perin, Christophe
Liang, Wanqi
Peret, Benjamin
Hodgman, Charlie T.
Lynch, Jonathan
Wissuwa, Matthias
Zhang, Dabing
Pridmore, Tony
Mooney, Sacha J.
Guiderdoni, Emmanuel
Swarup, Ranjan
Bennett, Malcolm J.
Giri, Jitender
Bhosale, Rahul
Huang, Guoqiang
Pandey, Bipin K.
Parker, Helen
Zappala, Susan
Yang, Jing
Dievart, Anne
Bureau, Charlotte
Ljung, Karin
Price, Adam
Rose, Terry
Larrieu, Antoine
Mairhofer, Stefan
Sturrock, Craig J.
White, Philip
Dupuy, Lionel
Hawkesford, Malcolm
Perin, Christophe
Liang, Wanqi
Peret, Benjamin
Hodgman, Charlie T.
Lynch, Jonathan
Wissuwa, Matthias
Zhang, Dabing
Pridmore, Tony
Mooney, Sacha J.
Guiderdoni, Emmanuel
Swarup, Ranjan
Bennett, Malcolm J.

Abstract

Root traits such as root angle and hair length influence resource acquisition particularly for immobile nutrients like phosphorus (P). Here, we attempted to modify root angle in rice by disrupting the OsAUX1 auxin influx transporter gene in an effort to improve rice P acquisition efficiency. We show by X-ray microCT imaging that root angle is altered in the osaux1 mutant, causing preferential foraging in the top soil where P normally accumulates, yet surprisingly, P acquisition efficiency does not improve. Through closer investigation, we reveal that OsAUX1 also promotes root hair elongation in response to P limitation. Reporter studies reveal that auxin response increases in the root hair zone in low P environments. We demonstrate that OsAUX1 functions to mobilize auxin from the root apex to the differentiation zone where this signal promotes hair elongation when roots encounter low external P. We conclude that auxin and OsAUX1 play key roles in promoting root foraging for P in rice.

Details

Database :
OAIster
Notes :
application/pdf, Giri, Jitender and Bhosale, Rahul and Huang, Guoqiang and Pandey, Bipin K. and Parker, Helen and Zappala, Susan and Yang, Jing and Dievart, Anne and Bureau, Charlotte and Ljung, Karin and Price, Adam and Rose, Terry and Larrieu, Antoine and Mairhofer, Stefan and Sturrock, Craig J. and White, Philip and Dupuy, Lionel and Hawkesford, Malcolm and Perin, Christophe and Liang, Wanqi and Peret, Benjamin and Hodgman, Charlie T. and Lynch, Jonathan and Wissuwa, Matthias and Zhang, Dabing and Pridmore, Tony and Mooney, Sacha J. and Guiderdoni, Emmanuel and Swarup, Ranjan and Bennett, Malcolm J. (2018) Rice auxin influx carrier OsAUX1 facilitates root hair elongation in response to low external phosphate. Nature Communications, 9 (1). 1408/1-1408/7. ISSN 2041-1723, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1042153910
Document Type :
Electronic Resource